Hosono Junji, Morikawa Shunichi, Ezaki Taichi, Kawamata Takakazu, Okada Yoshikazu
Department of Neurosurgery, Tokyo Women's Medical University, 8-1, Kawada-cho Shinjuku-ku, Tokyo, 162-8666, Japan.
Department of Anatomy and Developmental Biology, Tokyo Women's Medical University, 8-1, Kawada-cho Shinjuku-ku, Tokyo, 162-8666, Japan.
Brain Tumor Pathol. 2017 Jul;34(3):120-129. doi: 10.1007/s10014-017-0291-y. Epub 2017 Jun 23.
In glioma angiogenesis, tumor vessels cause morphological and functional abnormalities associated with malignancy and tumor progression. We hypothesized that certain structural changes or scantiness of functional pericytes may be involved in the formation of dysfunctional blood vessels in gliomas. In this study, we performed morphological examinations to elucidate the possible involvement of pericytes in brain tumor vessel abnormalities using a rat RG2 glioma model. After implantation of RG2 glioma cells in the syngeneic rat brain, gliomas were formed as early as day 7. In immunohistochemical examinations, desmin-positive pericytes, characterized by morphological abnormalities, were abundantly found on leaky vessels, as assessed by extravasation of lectin and high-molecular-weight dextrans. Interestingly, desmin-positive pericytes seemed to be characteristic of gliomas in rats. These pericytes were also found to express heat-shock protein 47, which plays an important role in the formation of the basement membrane, suggesting that RG2 pericytes promoted angiogenesis by producing basement membrane as a scaffold for newly forming blood vessels and caused functional abnormalities. We concluded that RG2 pericytes may be responsible for abnormal tumor angiogenesis lacking the functional ability to maintain the blood-brain barrier.
在胶质瘤血管生成过程中,肿瘤血管会导致与恶性肿瘤及肿瘤进展相关的形态和功能异常。我们推测,功能性周细胞出现的某些结构变化或数量稀少,可能与胶质瘤中功能失调血管的形成有关。在本研究中,我们使用大鼠RG2胶质瘤模型进行了形态学检查,以阐明周细胞可能参与脑肿瘤血管异常的情况。将RG2胶质瘤细胞植入同基因大鼠脑内后,最早在第7天就形成了胶质瘤。在免疫组织化学检查中,通过凝集素和高分子量葡聚糖的外渗评估发现,在渗漏血管上大量存在形态异常的结蛋白阳性周细胞。有趣的是,结蛋白阳性周细胞似乎是大鼠胶质瘤的特征。还发现这些周细胞表达热休克蛋白47,其在基底膜形成中起重要作用,这表明RG2周细胞通过产生基底膜作为新形成血管的支架促进血管生成,并导致功能异常。我们得出结论,RG2周细胞可能是缺乏维持血脑屏障功能能力的异常肿瘤血管生成的原因。